IP Library › Granted Patent US 12,157,077
Granted Patent B2
US 12,157,077 · App. 16/758,863 · Granted Dec 3, 2024

Combined fiber nonwoven fabric, laminate, filtration medium for filter and method thereof

Inventor: You Umebayashi (Shiga, JP)
Assignees: JNC CORPORATION; JNC FIBERS CORPORATION
B01D39/1623D04H1/43835D04H1/43838D04H1/728B01D2239/025B01D2239/0618B01D2239/0631B01D2239/0636B01D2239/064B01D2239/065B01D2239/10B01D2239/1233B01D2239/1291D10B2505/04
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Quick Facts
Patent No.
US 12,157,077
App. No.
16/758,863
Granted
Dec 3, 2024
Kind
B2
Abstract

A filtration medium for a filter, having high dust collection efficiency, low pressure loss, a long service life and sufficient processing strength into a filter. A combined fiber nonwoven fabric includes first fibers having a mean fiber diameter of less than 200 nanometers, and second fibers having a mean fiber diameter in the range of 200 to 5000 nanometers, in which basis weight of the combined fiber nonwoven fabric is in the range of 2.1 to 15.0 g/m 2 .

Claims (20)

1. A combined fiber nonwoven fabric, comprising first fibers having a mean fiber diameter of less than 200 nanometers; and second fibers having a mean fiber diameter in a range of 600 to 5000 nanometers, wherein

the first fibers comprise a high melting point resin and an anionic surfactant or a cationic surfactant,

the second fibers comprise a low melting point resin,

a melting point of the high melting point resin is higher than a melting point of the low melting point resin,

basis weight of the combined fiber nonwoven fabric is in a range of 2.1 to 15.0 g/m 2 ,

a ratio of the number of the first fibers to the second fibers is in a range of 80:20 to 98:2,

the high melting point resin is polyvinylidene fluoride,

the low melting point resin is a copolymer of vinylidene fluoride and hexafluoropropylene, and

a coefficient of variation of a fiber diameter of the first fibers is 0.5 or less, and a coefficient of variation of a fiber diameter of the second fibers is 0.13 or less.

2. The combined fiber nonwoven fabric according to claim 1 , wherein a melting point of the first fibers is higher than a melting point of the second fibers by 10° C. or more.

3. A laminate, wherein the combined fiber nonwoven fabric according to claim 1 is laminated on at least one side of a base material having a specific volume of 5 g/cm 3 or less.

4. A filtration medium, using the combined fiber nonwoven fabric according to claim 1 .

5. A method of producing a combined fiber nonwoven fabric, comprising: a step of forming fibers by electrostatic spinning of a first spinning solution comprising a high melting point resin and an anionic surfactant or a cationic surfactant for forming first fibers and a second spinning solution comprising a low melting point resin for forming second fibers; and a step of mixing the first fibers formed with the second fibers formed to obtain a nonwoven fabric,

wherein the second fibers have a mean fiber diameter in a range of 600 to 5000 nanometers,

a melting point of the high melting point resin is higher than a melting point of the low melting point resin,

a ratio of the number of the first fibers to the second fibers is in a range of 80:20 to 98:2,

the high melting point resin is polyvinylidene fluoride,

the low melting point resin is a copolymer of vinylidene fluoride and hexafluoropropylene, and

a coefficient of variation of a fiber diameter of the first fibers is 0.5 or less, and a coefficient of variation of a fiber diameter of the second fibers is 0.13 or less.

6. A filtration medium, using the laminate according to claim 3 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 28, 2020
From: UMEBAYASHI, YOU
To: JNC CORPORATION; JNC FIBERS CORPORATION
Reel/Frame 052519/0079 →
Priority Claims (1)
JP 2017-205986 · Oct 25, 2017 · national
Continuity (1)
Related Publication 20210236971A1 · Aug 5, 2021